Utilization of acetic acid reaction heat in other process plants

a technology of acetic acid and process plant, which is applied in the direction of carboxylic preparation from carbon monoxide reaction, carboxylic acid esters separation/purification, carboxylic compound preparation, etc. it can solve the problem of increasing the capital investment in product recovery and purification equipment, affecting the production efficiency and affecting the quality of acetic acid products. achieve the effect of facilitating the production and/or purification of vinyl acetate products

Inactive Publication Date: 2008-12-16
CELANESE INT CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Benefits of technology

[0011]The process and systems described herein are useful to provide cost and energy savings in vinyl acetate production processes.

Problems solved by technology

The more water there is in a reaction stream, the greater the operating costs to remove water from the product acetic acid and the greater the capital investment in product recovery and purification equipment.
However, when reducing the reactor water to minimize operating and fixed costs, it is more difficult to maintain acceptably high rates of acetic acid production with good catalyst stability since the rate of the reaction decreases as the reactor water is decreased as explained in U.S. Pat. No. 5,026,908.

Method used

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  • Utilization of acetic acid reaction heat in other process plants
  • Utilization of acetic acid reaction heat in other process plants

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Embodiment Construction

[0013]The process and systems described herein provide integrated systems for the production of acetic acid and vinyl acetate. More specifically, the processes and systems integrate the use of heat energy liberated during the production of acetic acid between the acetic acid production process and the vinyl acetate production and purification processes. The processes and systems are capable of delivering substantial energy and cost savings in vinyl acetate production and purification processes by productively utilizing heat energy wasted in conventional processes and systems.

[0014]The production of acetic acid by way of carbonylation reactions or through the catalytic oxidation of ethylene and / or ethane is an exothermic process. Conventionally, a significant portion of the heat of reaction generated in the production of acetic acid is dissipated, thereby losing the energy produced.

[0015]FIG. 1 is a schematic representation of exemplary embodiments of the integrated processes and sys...

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Abstract

Integrated processes and systems for producing acetic acid and vinyl acetate are provided. In the processes and systems, a portion of the heat produced during the production of the acetic acid is transferred to the vinyl acetate production and / or purification process and system to facilitate production and / or purification of the vinyl acetate product. The process and systems described herein are useful in conjunction with any of the various known processes for the production of acetic acid and vinyl acetate. The heat of the acetic acid production reaction may be transferred to the vinyl acetate production system by any suitable heat transfer processes and systems. The heat may be provided to the purification section at a variety of locations in the vinyl acetate production and purification systems, depending on the specific configuration of the system to which the processes and systems. The process and systems described herein are useful to provide cost and energy savings in vinyl acetate production processes.

Description

FIELD OF THE DISCLOSURE[0001]This disclosure relates to integrated processes and systems for producing acetic acid and vinyl acetate monomers.BACKGROUND INFORMATION[0002]An important process for the production of acetic acid is the carbonylation of an alkyl alcohol, especially methanol, and reactive derivatives thereof, with carbon monoxide in a liquid reaction medium. Such carbonylation reactions are generally carried out in the presence of a catalyst, e.g., a Group VIII metal catalyst such as rhodium and iridium, a halogen containing catalyst promoter, e.g., methyl iodide, and water. U.S. Pat. No. 3,769,329 discloses the use of a rhodium-based carbonylation catalyst dissolved, or otherwise dispersed, in a liquid reaction medium or supported on an inert solid, along with a halogen-containing catalyst promoter as exemplified by methyl iodide. However, it is understood that various catalyst systems, particularly those incorporating Group VIII metals, may be used for the production of...

Claims

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Application Information

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Patent Type & Authority Patents(United States)
IPC IPC(8): C07C67/48C07C51/10C07C51/12C07C51/25C07C67/05
CPCC07C51/12C07C51/25C07C67/05C07C53/08C07C69/01C07C69/15Y02P20/10
Inventor BHASKARAN, SUBRAMANIANSEKAR, ANGADU KRISHNAMOORTHY
Owner CELANESE INT CORP
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